Faithful reporting of temporal patterns of intracellular Ca(2+) dynamics requires the working range of indicators to match the signals. Current genetically encoded calmodulin-based fluorescent indicators are likely to distort fast Ca(2+) signals by apparent saturation and integration due to their limiting fluorescence rise and decay kinetics. A series of probes was engineered with a range of Ca(2+) affinities and accelerated kinetics by weakening the Ca(2+)-calmodulin-peptide interactions. At 37 °C, the GCaMP3-derived probe termed GCaMP3fast is 40-fold faster than GCaMP3 with Ca(2+) decay and rise times, t1/2, of 3.3 ms and 0.9 ms, respectively, making it the fastest to-date. GCaMP3fast revealed discreet transients with significantly faster...
The spatio-temporal attributes of intracellular calcium (Ca2+) transients activate various biologica...
Calcium imaging with protein-based indicators1,2 is widely used to follow neural activity in intact ...
In this issue of Chemistry & Biology, Tsien and colleagues [1] describe a new family of highly sensi...
Faithful reporting of temporal patterns of intracellular Ca 2 + dynamics requires the working ra...
Faithful reporting of temporal patterns of intracellular Ca(2+) dynamics requires the working range ...
Faithful reporting of temporal patterns of intracellular Ca(2+) dynamics requires the working range ...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin (CaM) is a ubiquitously expressed calcium-binding protein that plays a critical role in c...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin (CaM) is a ubiquitously expressed calcium-binding protein that plays a critical role in c...
Genetically encoded calcium indicators (GECIs) are useful reporters of cell-signaling, neuronal, and...
The level of intracellular calcium is strictly regulated in all cells. In a resting cell, the [Ca2+]...
The spatio-temporal attributes of intracellular calcium (Ca2+) transients activate various biologica...
Calcium imaging with protein-based indicators1,2 is widely used to follow neural activity in intact ...
In this issue of Chemistry & Biology, Tsien and colleagues [1] describe a new family of highly sensi...
Faithful reporting of temporal patterns of intracellular Ca 2 + dynamics requires the working ra...
Faithful reporting of temporal patterns of intracellular Ca(2+) dynamics requires the working range ...
Faithful reporting of temporal patterns of intracellular Ca(2+) dynamics requires the working range ...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin (CaM) is a ubiquitously expressed calcium-binding protein that plays a critical role in c...
Calmodulin-based genetically encoded fluorescent calcium indicators (GCaMP-s) are powerful tools of ...
Calmodulin (CaM) is a ubiquitously expressed calcium-binding protein that plays a critical role in c...
Genetically encoded calcium indicators (GECIs) are useful reporters of cell-signaling, neuronal, and...
The level of intracellular calcium is strictly regulated in all cells. In a resting cell, the [Ca2+]...
The spatio-temporal attributes of intracellular calcium (Ca2+) transients activate various biologica...
Calcium imaging with protein-based indicators1,2 is widely used to follow neural activity in intact ...
In this issue of Chemistry & Biology, Tsien and colleagues [1] describe a new family of highly sensi...